English

Shear viscosity of nuclear matter in the spinodal region

Nuclear Theory 2023-03-03 v2

Abstract

Based on IBUU simulations calibrated by previous efforts of the transport model evaluation project, we have studied the specific shear viscosity η/s\eta/s of nuclear matter in the spinodal region using the Green-Kubo method. With the momentum-independent mean-field potential which reproduces reasonably well empirical nuclear matter properties and nuclear phase diagram, we have generated dynamically stable and thermalized nuclear cluster systems in a box with the periodic boundary condition. Extensive results of the η/s\eta/s at different average densities and temperatures in uniform and non-uniform systems are compared, and we found that the shear viscosity is smaller with nuclear clusters due to the enhanced correlation of the energy-momentum tensor and the stronger collision effect. The temperature dependence of the η/s\eta/s has a minimum only at low average densities of ρ<0.3ρ0\rho<0.3\rho_0. The present study serves as a rigorous baseline calculation of the η/s\eta/s in nuclear systems with clusters, and helps to understand the relation between the shear viscosity and the nuclear phase diagram.

Keywords

Cite

@article{arxiv.2301.07922,
  title  = {Shear viscosity of nuclear matter in the spinodal region},
  author = {Lei-Ming Hua and Jun Xu},
  journal= {arXiv preprint arXiv:2301.07922},
  year   = {2023}
}

Comments

12 pages, 10 figures